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February 13, 20260 citationsOpen Access

The influence of machining parameters on Wire Electrical Discharge Machining of Nimonic Alloy 75

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PGP. Prasanna Saidulu. G

Key Points

  • The research aims to optimize the machining characteristics of Nimonic Alloy 75 using Wire EDM.
  • Used Molybdenum wire with a diameter of 0.18 mm for cutting.
  • Applied Taguchi L9 orthogonal array design for experimental setup.
  • Varied Peak Current, Pulse on Time, Pulse off Time, and Gap Voltage during machining.
  • Employed Analysis of Variance (ANOVA) to assess the impact of parameters.
  • Optimized Material Removal Rate (MRR), Kerf Width (W), and Kerf Taper Angle (θ).
  • Identified key parameters affecting machining efficiency.
  • Achieved significant improvements in machining outcomes.

Abstract

ABSTRACT:Wire-cut Electric Discharge Machining (WEDM) is an unconventional machining process that uses a wire as atool to remove material. This study focuses on the optimization of Material Removal Rate (MRR), Kerf Width(W), and Kerf Taper Angle (θ) while machining Nimonic Alloy 75 using a Molybdenum wire with a diameter of0.18 mm on a wire-cut EDM machine. During the machining process, deionized water was utilized to cool theworkpiece and flush away small particles from the gap. The outcomes Material Removal Rate (MRR), KerfWidth (W), and Kerf Taper Angle (θ)were optimized using the Taguchi L9 orthogonal array design approach.The experiments were conducted by varying Peak Current (IP), Pulse on Time (Ton), Pulse off Time (Toff), andGap Voltage (V). An Analysis of Variance (ANOVA) was employed to determine which parameters mostsignificantly influenced the Material Removal Rate, Kerf Width, and Kerf Taper Angle.

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P. Prasanna Saidulu. G (2026) studied this question.

synapsesocial.com/papers/698ebf4385a1ff6a93016863https://doi.org/10.5281/zenodo.18609938
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